Zhang Wei-Wei, Wang Guang-Hua, Wang Mei-Yu, Liu Xiao-Bing, Feng Zhao-Zhong
Huan Jing Ke Xue. 2014 Apr;35(4):1473-8.
Soybean cultivar Dongsheng No. 1 [Glycine max (L.) Mer.] was exposed to charcoal-filtered air (CFA), non-filtered air (NFA) and non-filtered air with ozone addition (NFA + O3) in nine open-top chambers. Individual yield and yield components at maturity, C, N concentration in leaf and seed, gas exchange, chlorophyll a fluorescence and pigments content at the full bloom stage were measured with an AOT40 value of 10.6 microL x L(-1) x h during the growing season. Compared to CFA, NFA reduced individual yield and 100-seed weight by 4.5% and 4% respectivley, while NFA + O3 treatment significantly reduced each of them by 34% and 18%. However, plant height, node numbers of main stem, pods per plant and number of seeds per pod remained unchanged by O3 addition. Leaf C, N concentrations at the seed filling stage under NFA + O3 also significantly increased by 3% and 26%, respectively, while the CN ratio significantly decreased by 18%. Moreover, compared to CFA and NFA, NFA + O3 caused significant reductions in the photosynthetic parameters at the full bloom stage, e.g. significant declines in net photosynthetic rates, stomatal conductance, water use efficiency, fluorescence parameters of F'(v)/F'(m) and phi(PS II). It is proposed that lower photosynthetic rates, reduced photochemical efficiency in PS II and the decline in 100-seed weight might be the main reasons contributing to the lower individual yield of soybean plant by elevated O3.
大豆品种东生1号[Glycine max (L.) Mer.]在9个开放式顶篷箱中分别暴露于活性炭过滤空气(CFA)、未过滤空气(NFA)和添加臭氧的未过滤空气(NFA + O3)环境中。在生长季,以累积光化学有效辐射暴露量(AOT40)值为10.6微升×升⁻¹×小时进行处理,测定了成熟期的单株产量及其构成因素、叶片和种子中的碳、氮浓度、气体交换、叶绿素a荧光以及盛花期的色素含量。与CFA相比,NFA使单株产量和百粒重分别降低了4.5%和4%,而NFA + O3处理则使它们分别显著降低了34%和18%。然而,株高、主茎节数、单株荚数和每荚粒数并未因添加臭氧而发生变化。在NFA + O3处理下,鼓粒期叶片中的碳、氮浓度也分别显著增加了3%和26%,而碳氮比则显著降低了18%。此外,与CFA和NFA相比,NFA + O3导致盛花期的光合参数显著降低,例如净光合速率、气孔导度、水分利用效率、F'(v)/F'(m)和PS II的光化学量子产量(phi(PS II))等荧光参数均显著下降。研究表明,较低的光合速率、PS II光化学效率的降低以及百粒重的下降可能是臭氧浓度升高导致大豆单株产量降低的主要原因。